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Experimental verification of Faradaic charging in ac electrokinetics

机译:法拉第交流电动力学实验验证

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摘要

This paper investigates the phenomenon of Faradaic charging in ac electrokinetics. Faradaic reactions were suggested as a key effect responsible for the reversal of pumping direction in ac micropumps. However, this hypothesis has yet to be proven convincingly and directly. Here we present an ion detection strategy to determine the production of ions through Faradaic hydrolytic reactions originating from direct application of voltage to electrolytic solutions during ac electrokinetics. Experiments were performed with symmetrical planar electrodes aligned along a microfluidic channel. Fluorescein, a pH-dependent dye, was employed as the pH indicator for the detection of ion production. Images were captured for analysis at various voltage levels. From analyzing the fluorescence intensity and its distribution, it can be concluded that the production of ions from hydrolytic reactions takes place and increases with the ac voltage. The coefficient of deviation indicates a significant enhancement at ac voltage above 11 Vpp. Lastly, we demonstrate a strategy using dc-biased ac electrokinetics to achieve controllability in direction and magnitude of the net fluid flow in pumping application.
机译:本文研究了交流电动力学中的法拉第充电现象。法拉第反应被认为是逆转交流微型泵泵浦方向的关键作用。但是,这一假设尚未得到令人信服和直接的证明。在这里,我们提出一种离子检测策略,以确定通过法拉第水解反应产生的离子,这些反应是由在交流电动过程中直接向电解液施加电压而产生的。使用沿着微流体通道排列的对称平面电极进行实验。 pH依赖性染料荧光素用作检测离子产生的pH指示剂。捕获图像以在各种电压水平下进行分析。通过分析荧光强度及其分布,可以得出结论,水解反应产生的离子随交流电压的增加而增加。偏差系数表明交流电压高于11 Vpp时有显着提高。最后,我们展示了一种使用直流偏置交流电动力学的策略,可实现泵送应用中净流体流动方向和大小的可控性。

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